[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Rabbani et al., 2012 - Google Patents

Pyrene-directed growth of nanoporous benzimidazole-linked nanofibers and their application to selective CO 2 capture and separation

Rabbani et al., 2012

View PDF
Document ID
16274237194685739343
Author
Rabbani M
Sekizkardes A
El-Kadri O
Kaafarani B
El-Kaderi H
Publication year
Publication venue
Journal of Materials Chemistry

External Links

Snippet

A pyrene-based benzimidazole-linked polymer (BILP-10) has been synthesized by the co- condensation of 1, 3, 6, 8-tetrakis (4-formylphenyl) pyrene and 1, 2, 4, 5-benzenetetramine tetrahydrochloride in dimethylformamide. The use of pyrene as a molecular building unit …
Continue reading at www.researchgate.net (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Rabbani et al. Pyrene-directed growth of nanoporous benzimidazole-linked nanofibers and their application to selective CO 2 capture and separation
Rabbani et al. Benzothiazole-and benzoxazole-linked porous polymers for carbon dioxide storage and separation
Rabbani et al. High CO 2 uptake and selectivity by triptycene-derived benzimidazole-linked polymers
Reich et al. Highly selective CO 2/CH 4 gas uptake by a halogen-decorated borazine-linked polymer
Sekizkardes et al. Application of pyrene-derived benzimidazole-linked polymers to CO 2 separation under pressure and vacuum swing adsorption settings
Arab et al. Synthesis and evaluation of porous azo-linked polymers for carbon dioxide capture and separation
İslamoğlu et al. Impact of post-synthesis modification of nanoporous organic frameworks on small gas uptake and selective CO 2 capture
Mondal et al. Triptycene based 1, 2, 3-triazole linked network polymers (TNP s): small gas storage and selective CO 2 capture
Shao et al. One-pot synthesis of melamine-based porous polyamides for CO2 capture
Dey et al. Covalent triazine-based frameworks (CTFs) from triptycene and fluorene motifs for CO 2 adsorption
Mukherjee et al. Newly designed 1, 2, 3-triazole functionalized covalent triazine frameworks with exceptionally high uptake capacity for both CO 2 and H 2
Ahmed et al. Design and synthesis of porous polymeric materials and their applications in gas capture and storage: a review
Ben et al. Gas storage in porous aromatic frameworks (PAFs)
Zhao et al. Microporous carbonaceous adsorbents for CO 2 separation via selective adsorption
Song et al. Nitrogen-rich diaminotriazine-based porous organic polymers for small gas storage and selective uptake
Zhao et al. Target synthesis of a novel porous aromatic framework and its highly selective separation of CO 2/CH 4
Kahveci et al. Targeted synthesis of a mesoporous triptycene-derived covalent organic framework
Xu et al. New nitrogen-rich azo-bridged porphyrin-conjugated microporous networks for high performance of gas capture and storage
Khalili et al. Synthesis of activated carbon/polyaniline nanocomposites for enhanced CO 2 adsorption
Qiao et al. Design and synthesis of novel carbazole–spacer–carbazole type conjugated microporous networks for gas storage and separation
Patiño et al. DES assisted synthesis of hierarchical nitrogen-doped carbon molecular sieves for selective CO 2 versus N 2 adsorption
Das et al. Facile synthesis of triazine-triphenylamine-based microporous covalent polymer adsorbent for flue gas CO2 capture
Chen et al. Highly efficient mechanochemical synthesis of an indium based metal-organic framework with excellent water stability
Liu et al. Control of porosity of novel carbazole-modified polytriazine frameworks for highly selective separation of CO 2–N 2
Yuan et al. Phthalazinone structure-based covalent triazine frameworks and their gas adsorption and separation properties